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通过扫描诱变对平衡折叠中间体的构象异质性进行量化和映射。

Conformational heterogeneity of an equilibrium folding intermediate quantified and mapped by scanning mutagenesis.

作者信息

Yan Shude, Gawlak Grzegorz, Smith Jonathan, Silver Lin, Koide Akiko, Koide Shohei

机构信息

Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, IL 60637, USA.

出版信息

J Mol Biol. 2004 May 7;338(4):811-25. doi: 10.1016/j.jmb.2004.02.063.

DOI:10.1016/j.jmb.2004.02.063
PMID:15099747
Abstract

It is challenging to experimentally define an energy landscape for protein folding that comprises multiple partially unfolded states. Experimental results are often ambiguous as to whether a non-native state is conformationally homogeneous. Here, we tested an approach combining systematic mutagenesis and a Brønsted-like analysis to reveal and quantify conformational heterogeneity of folding intermediate states. Using this method, we resolved an otherwise apparently homogeneous equilibrium folding intermediate of Borrelia burgdorferi OspA into two conformationally distinct species and determined their relative populations. Furthermore, we mapped the structural differences between these intermediate species, which are consistent with the non-native species that we previously proposed based on native-state hydrogen exchange studies. When treated as a single state, the intermediate ensemble exhibited fractional Phi-values for mutations and Hammond-type behaviors that are often observed for folding transition states. We found that a change in relative population of the two species within the intermediate ensemble explains these properties well, suggesting that fractional Phi-values and Hammond-type behaviors exhibited by folding intermediates and transition states may arise more often from conformational heterogeneity than from a single partial structure. Our results are consistent with the presence of multiple minima in a rugged energy landscape predicted from theoretical studies. The method described here provides a promising means to probe a complex folding energy landscape.

摘要

通过实验确定包含多个部分未折叠状态的蛋白质折叠能量景观具有挑战性。对于非天然状态在构象上是否均一,实验结果往往不明确。在这里,我们测试了一种结合系统诱变和类布朗斯特分析的方法,以揭示和量化折叠中间态的构象异质性。使用这种方法,我们将伯氏疏螺旋体OspA原本看似均一的平衡折叠中间体解析为两个构象不同的物种,并确定了它们的相对丰度。此外,我们绘制了这些中间物种之间的结构差异,这与我们之前基于天然态氢交换研究提出的非天然物种一致。当将其视为单一状态时,中间集合体表现出突变的分数Phi值和折叠过渡态中经常观察到的哈蒙德型行为。我们发现,中间集合体中两个物种相对丰度的变化很好地解释了这些性质,这表明折叠中间体和过渡态表现出的分数Phi值和哈蒙德型行为可能更多地源于构象异质性,而非单一的部分结构。我们的结果与理论研究预测的崎岖能量景观中存在多个最小值一致。这里描述的方法为探索复杂的折叠能量景观提供了一种有前景的手段。

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